Evaluación del desarrollo dental en niños con infección pulpar por caries dental en primeros molares permanentes inmaduros
Resumen
DOI: https://doi.org/10.53766/AcBio/2024.14.28.09
El objetivo de este estudio era evaluar el impacto del desarrollo temprano de los dientes en la caries dental infantil. Se incluyeron en el grupo de estudio 220 pacientes (121 niñas y 99 niños) con infección pulpar debida a caries dental en primeros molares permanentes inmaduros, con edades comprendidas entre los 6 y los 10,5 años. Se evaluó un grupo de control de 220 pacientes sanos de edad y sexo similares. Se registraron la edad cronológica de los pacientes y la información sobre los dientes afectados. La edad dental se calculó mediante el método de Demirjian. Los datos obtenidos se analizaron estadísticamente mediante la prueba t, la prueba U de Mann Whitney, la prueba de Wilcoxon, la prueba de Fisher Freeman Halton y la prueba Chi-cuadrado de Pearson (p<0,05). Al comparar las diferencias entre las medias de edad dental y edad cronológica (DA-CA) entre los grupos de estudio y control, la media de DA-CA fue de 0,16 en el grupo control y de 0,68 en el grupo de estudio, siendo la diferencia estadísticamente significativa (p<0,001). La erupción precoz de los primeros molares permanentes debido al desarrollo dental temprano puede aumentar el riesgo de caries en estos dientes.
Recibido: 31/05/2024
Aceptado: 03/06/2024
Palabras clave
Texto completo:
PDF (English)Referencias
Kasimoglu Y, Tuna-Ince EB. Dis hekimliginde kemik yasi tayininde kullanilan yöntemler: derleme. Acta Odontol Turc. 2016;33(1):39-46.
Dogan FB, Akgünlü F. Kronolojik, dental ve iskeletsel yas arasindaki korelasyonun degerlendirilmesi. Selcuk Dent J. 2019;6(4):420-424.
Rakhshan V. Congenitally missing teeth (hypodontia): A review of the literature concerning the etiology, prevalence, risk factors, patterns and treatment. J Dent Res. 2015;12(1):1-13.
Arvystas MG. Early eruption of deciduous and permanent teeth: a case report. Am J Orthod. 1974;66(2):189-197.
Lal S, Cheng B, Kaplan S, et al. Accelerated tooth eruption in children with diabetes mellitus. Pediatrics. 2008;121(5):1139-1143.
Mohamedhussein N, Busuttil-Naudi A, Mohammed H, UlHaq A. Association of obesity with the eruption of first and second permanent molars in children: a systematic review. Eur Arch Paediatr Dent. 2020;21:13-23.
Güçlü E, Hazar Bodrumlu E, Durmuslar S. Evaluation of Dental Caries in Children with an Indication for Permanent First Molar Extraction. EÜ Dishek Fak Derg. 2023;44(2):101-107.
Alves L, Zenkner J, Wagner M, Damé-Teixeira N, Susin C, Maltz M. Eruption stage of permanent molars and occlusal caries activity/arrest. J Dent Res. 2014;93(7):114-119.
Duman S, Duruk G. 6-12 Yas Grubu Çocuklarda Daimi Birinci Büyük Azi Dislerin Önemi Ve Degerlendirilmesi–Derleme. J Dent Fac Ataturk Univ. 2018;28(4):610-624.
Aras A, Dogan MS. Caries prevalence and severity in immature permanent first molar teeth in Sanliurfa city, Turkey. J Dent Indones. 2020;27(1):13-16.
Karabekiroglu S, Çayir I, Elmaci I, Ünlü N. Yüksek Çürük Riskli Genç Yetiskinlerde Çürük Degerlendirme Spektrumu ve Tedavisi (CAST) indeksi Kullaniminin Etkinligi: Klinik Çalisma. NEU Dent J. 2020;2(2):46-51.
Demirjian A, Goldstein H, Tanner JM. A new system of dental age assessment. Hum Biol. 1973:211-227.
Litsas G, Lucchese A. Dental and chronological ages as determinants of peak growth period and its relationship with dental calcification stages. Open Dent J. 2016;10:99-108.
Kuremoto K, Okawa R, Matayoshi S, Kokomoto K, Nakano K. Estimation of dental age based on the developmental stages of permanent teeth in Japanese children and adolescents. Sci Rep. 2022;12(1):3345.
Kurniawan A, Chusida An, Atika N, et al. The applicable dental age estimation methods for children and adolescents in Indonesia. Int J Dent. 2022:2022;6761476.
Moness Ali AM, Ahmed WH, Khattab NM. Applicability of Demirjian’s method for dental age estimation in a group of Egyptian children. BDJ open. 2019;5(1):1-6.
Mack KB, Phillips C, Jain N, Koroluk LD. Relationship between body mass index percentile and skeletal maturation and dental development in orthodontic patients. Am J Orthod Dentofacial Orthop. 2013;143(2):228-234.
Ye X, Jiang F, Sheng X, Huang H, Shen X. Dental age assessment in 7–14-year-old Chinese children: Comparison of Demirjian and Willems methods. Forensic Sci Int. 2014;244:36-41.
Hedayati Z, Khalafinejad F. Relationship between body mass index, skeletal maturation and dental development in 6-to 15-year old orthodontic patients in a sample of Iranian population. J Dent. 2014;15(4):180.
Bodrumlu EH, Toprak S, Demiriz L. Assessment of Dental Development in Children with Supernumerary Teeth: Case-Control Study. Turkiye Klinikleri J Dental Sci. 2023;29(1):66-72.
Avsar A, Topaloglu B, Hazar-Bodrumlu E. Association of passive smoking with dental development in young children. Eur J Paediatr Dent. 2013;14(3):215-218.
Emeksiz C, Yilmaz N, Tüzüner T, Baygin O. Dental age estimation with two different methods in paediatric patients with hypothyroidism. Arch Oral Biol. 2022;139:105450.
Duman S, Vural H, Duman SB. Supernumerary teeth and dental development. J Craniofaci Surg. 2021;32(5):1826-1829.
Sezer B, Çarikçioglu B. 12-15 Yas Araligindaki Adölesanlarda Dis Çürügünün Dis Yasi ve Gelisimine etkisi. Curr Res Dent Sci. 2022;32(1):29-33.
Bodrumlu EH, Demiriz L, Toprak S. Relationship between severe early childhood caries and dental development. European journal of paediatric dentistry. 2018;19:156-160.
Kjær I. Mechanism of human tooth eruption: review article including a new theory for future studies on the eruption process. Scientifica. 2014;2014:341905.
Uysal T, Amasyali M, Ozcan S, Sagdic D. Demineralization properties of newly erupted and mature premolars around orthodontic brackets: An in-vivo study. Am J Orthod Dentofacial Orthop. 2010;137(5):581-586.
Kotsanos N, Darling A. Influence of posteruptive age of enamel on its susceptibility to artificial caries. Caries Res. 1991;25(4):241-250.
Schulte A, Gente M, Pieper K. Posteruptive changes of electrical resistance values in fissure enamel of premolars. Caries Res. 1999;33(3):242-247.
Cardona Salazar DK, Caplin J, Whyms P, et al. Nutrition, obesity, and dental development in young adolescents in Chicago. Am J Hum Biol. 2022;34(6):23721.
Sá-Pinto A, Rego T, Marques L, Martins C, Ramos-Jorge M, Ramos-Jorge J. Association between malocclusion and dental caries in adolescents: a systematic review and meta-analysis. Eur Arch Paediatr Dent. 2018;19:73-82.
DOI: https://www.doi.org/10.53766/AcBio/Se encuentra actualmente indizada en: | |||
![]() | ![]() | ![]() | ![]() |
![]() ![]() | ![]() | ![]() | ![]() |
![]() | ![]() | ![]() | ![]() |
![]() | ![]() |
Todos los documentos publicados en esta revista se distribuyen bajo una
Licencia Creative Commons Atribución -No Comercial- Compartir Igual 4.0 Internacional.
Por lo que el envío, procesamiento y publicación de artículos en la revista es totalmente gratuito.